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Jeff Kirsherb980ac12013-02-23 07:29:56 +00001/* PTP Hardware Clock (PHC) driver for the Intel 82576 and 82580
Richard Cochrand339b132012-03-16 10:55:32 +00002 *
3 * Copyright (C) 2011 Richard Cochran <richardcochran@gmail.com>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
Carolyn Wyborny74cfb2e2014-02-25 17:58:57 -080015 * You should have received a copy of the GNU General Public License along with
16 * this program; if not, see <http://www.gnu.org/licenses/>.
Richard Cochrand339b132012-03-16 10:55:32 +000017 */
18#include <linux/module.h>
19#include <linux/device.h>
20#include <linux/pci.h>
Matthew Vickba598142012-12-13 07:20:36 +000021#include <linux/ptp_classify.h>
Richard Cochrand339b132012-03-16 10:55:32 +000022
23#include "igb.h"
24
25#define INCVALUE_MASK 0x7fffffff
26#define ISGN 0x80000000
27
Jeff Kirsherb980ac12013-02-23 07:29:56 +000028/* The 82580 timesync updates the system timer every 8ns by 8ns,
Richard Cochran7ebae812012-03-16 10:55:37 +000029 * and this update value cannot be reprogrammed.
30 *
Richard Cochrand339b132012-03-16 10:55:32 +000031 * Neither the 82576 nor the 82580 offer registers wide enough to hold
32 * nanoseconds time values for very long. For the 82580, SYSTIM always
33 * counts nanoseconds, but the upper 24 bits are not availible. The
34 * frequency is adjusted by changing the 32 bit fractional nanoseconds
35 * register, TIMINCA.
36 *
37 * For the 82576, the SYSTIM register time unit is affect by the
38 * choice of the 24 bit TININCA:IV (incvalue) field. Five bits of this
39 * field are needed to provide the nominal 16 nanosecond period,
40 * leaving 19 bits for fractional nanoseconds.
41 *
Richard Cochran7ebae812012-03-16 10:55:37 +000042 * We scale the NIC clock cycle by a large factor so that relatively
43 * small clock corrections can be added or subtracted at each clock
44 * tick. The drawbacks of a large factor are a) that the clock
45 * register overflows more quickly (not such a big deal) and b) that
46 * the increment per tick has to fit into 24 bits. As a result we
47 * need to use a shift of 19 so we can fit a value of 16 into the
48 * TIMINCA register.
49 *
Richard Cochrand339b132012-03-16 10:55:32 +000050 *
51 * SYSTIMH SYSTIML
52 * +--------------+ +---+---+------+
53 * 82576 | 32 | | 8 | 5 | 19 |
54 * +--------------+ +---+---+------+
55 * \________ 45 bits _______/ fract
56 *
57 * +----------+---+ +--------------+
58 * 82580 | 24 | 8 | | 32 |
59 * +----------+---+ +--------------+
60 * reserved \______ 40 bits _____/
61 *
62 *
63 * The 45 bit 82576 SYSTIM overflows every
64 * 2^45 * 10^-9 / 3600 = 9.77 hours.
65 *
66 * The 40 bit 82580 SYSTIM overflows every
67 * 2^40 * 10^-9 / 60 = 18.3 minutes.
68 */
69
Matthew Vicka79f4f82012-08-10 05:40:44 +000070#define IGB_SYSTIM_OVERFLOW_PERIOD (HZ * 60 * 9)
Matthew Vick428f1f72012-12-13 07:20:34 +000071#define IGB_PTP_TX_TIMEOUT (HZ * 15)
Matthew Vicka79f4f82012-08-10 05:40:44 +000072#define INCPERIOD_82576 (1 << E1000_TIMINCA_16NS_SHIFT)
73#define INCVALUE_82576_MASK ((1 << E1000_TIMINCA_16NS_SHIFT) - 1)
74#define INCVALUE_82576 (16 << IGB_82576_TSYNC_SHIFT)
75#define IGB_NBITS_82580 40
Richard Cochrand339b132012-03-16 10:55:32 +000076
Jeff Kirsher167f3f72014-02-25 17:58:56 -080077static void igb_ptp_tx_hwtstamp(struct igb_adapter *adapter);
78
Jeff Kirsherb980ac12013-02-23 07:29:56 +000079/* SYSTIM read access for the 82576 */
Matthew Vicka79f4f82012-08-10 05:40:44 +000080static cycle_t igb_ptp_read_82576(const struct cyclecounter *cc)
Richard Cochrand339b132012-03-16 10:55:32 +000081{
Richard Cochrand339b132012-03-16 10:55:32 +000082 struct igb_adapter *igb = container_of(cc, struct igb_adapter, cc);
83 struct e1000_hw *hw = &igb->hw;
Matthew Vicka79f4f82012-08-10 05:40:44 +000084 u64 val;
85 u32 lo, hi;
Richard Cochrand339b132012-03-16 10:55:32 +000086
87 lo = rd32(E1000_SYSTIML);
88 hi = rd32(E1000_SYSTIMH);
89
90 val = ((u64) hi) << 32;
91 val |= lo;
92
93 return val;
94}
95
Jeff Kirsherb980ac12013-02-23 07:29:56 +000096/* SYSTIM read access for the 82580 */
Matthew Vicka79f4f82012-08-10 05:40:44 +000097static cycle_t igb_ptp_read_82580(const struct cyclecounter *cc)
Richard Cochrand339b132012-03-16 10:55:32 +000098{
Richard Cochrand339b132012-03-16 10:55:32 +000099 struct igb_adapter *igb = container_of(cc, struct igb_adapter, cc);
100 struct e1000_hw *hw = &igb->hw;
Akeem G Abodunrine5c33702013-06-06 01:31:09 +0000101 u32 lo, hi;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000102 u64 val;
Richard Cochrand339b132012-03-16 10:55:32 +0000103
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000104 /* The timestamp latches on lowest register read. For the 82580
Richard Cochran7ebae812012-03-16 10:55:37 +0000105 * the lowest register is SYSTIMR instead of SYSTIML. However we only
106 * need to provide nanosecond resolution, so we just ignore it.
107 */
Akeem G Abodunrine5c33702013-06-06 01:31:09 +0000108 rd32(E1000_SYSTIMR);
Richard Cochrand339b132012-03-16 10:55:32 +0000109 lo = rd32(E1000_SYSTIML);
110 hi = rd32(E1000_SYSTIMH);
111
112 val = ((u64) hi) << 32;
113 val |= lo;
114
115 return val;
116}
117
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000118/* SYSTIM read access for I210/I211 */
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000119static void igb_ptp_read_i210(struct igb_adapter *adapter, struct timespec *ts)
120{
121 struct e1000_hw *hw = &adapter->hw;
Akeem G Abodunrine5c33702013-06-06 01:31:09 +0000122 u32 sec, nsec;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000123
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000124 /* The timestamp latches on lowest register read. For I210/I211, the
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000125 * lowest register is SYSTIMR. Since we only need to provide nanosecond
126 * resolution, we can ignore it.
127 */
Akeem G Abodunrine5c33702013-06-06 01:31:09 +0000128 rd32(E1000_SYSTIMR);
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000129 nsec = rd32(E1000_SYSTIML);
130 sec = rd32(E1000_SYSTIMH);
131
132 ts->tv_sec = sec;
133 ts->tv_nsec = nsec;
134}
135
136static void igb_ptp_write_i210(struct igb_adapter *adapter,
137 const struct timespec *ts)
138{
139 struct e1000_hw *hw = &adapter->hw;
140
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000141 /* Writing the SYSTIMR register is not necessary as it only provides
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000142 * sub-nanosecond resolution.
143 */
144 wr32(E1000_SYSTIML, ts->tv_nsec);
145 wr32(E1000_SYSTIMH, ts->tv_sec);
146}
147
Matthew Vicka79f4f82012-08-10 05:40:44 +0000148/**
149 * igb_ptp_systim_to_hwtstamp - convert system time value to hw timestamp
150 * @adapter: board private structure
151 * @hwtstamps: timestamp structure to update
152 * @systim: unsigned 64bit system time value.
153 *
154 * We need to convert the system time value stored in the RX/TXSTMP registers
155 * into a hwtstamp which can be used by the upper level timestamping functions.
156 *
157 * The 'tmreg_lock' spinlock is used to protect the consistency of the
158 * system time value. This is needed because reading the 64 bit time
159 * value involves reading two (or three) 32 bit registers. The first
160 * read latches the value. Ditto for writing.
161 *
162 * In addition, here have extended the system time with an overflow
163 * counter in software.
164 **/
165static void igb_ptp_systim_to_hwtstamp(struct igb_adapter *adapter,
166 struct skb_shared_hwtstamps *hwtstamps,
167 u64 systim)
168{
169 unsigned long flags;
170 u64 ns;
171
172 switch (adapter->hw.mac.type) {
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000173 case e1000_82576:
174 case e1000_82580:
Carolyn Wybornyceb5f132013-04-18 22:21:30 +0000175 case e1000_i354:
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000176 case e1000_i350:
177 spin_lock_irqsave(&adapter->tmreg_lock, flags);
178
179 ns = timecounter_cyc2time(&adapter->tc, systim);
180
181 spin_unlock_irqrestore(&adapter->tmreg_lock, flags);
182
183 memset(hwtstamps, 0, sizeof(*hwtstamps));
184 hwtstamps->hwtstamp = ns_to_ktime(ns);
185 break;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000186 case e1000_i210:
187 case e1000_i211:
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000188 memset(hwtstamps, 0, sizeof(*hwtstamps));
189 /* Upper 32 bits contain s, lower 32 bits contain ns. */
190 hwtstamps->hwtstamp = ktime_set(systim >> 32,
191 systim & 0xFFFFFFFF);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000192 break;
193 default:
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000194 break;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000195 }
Matthew Vicka79f4f82012-08-10 05:40:44 +0000196}
197
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000198/* PTP clock operations */
Matthew Vicka79f4f82012-08-10 05:40:44 +0000199static int igb_ptp_adjfreq_82576(struct ptp_clock_info *ptp, s32 ppb)
Richard Cochrand339b132012-03-16 10:55:32 +0000200{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000201 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
202 ptp_caps);
203 struct e1000_hw *hw = &igb->hw;
204 int neg_adj = 0;
Richard Cochrand339b132012-03-16 10:55:32 +0000205 u64 rate;
206 u32 incvalue;
Richard Cochrand339b132012-03-16 10:55:32 +0000207
208 if (ppb < 0) {
209 neg_adj = 1;
210 ppb = -ppb;
211 }
212 rate = ppb;
213 rate <<= 14;
214 rate = div_u64(rate, 1953125);
215
216 incvalue = 16 << IGB_82576_TSYNC_SHIFT;
217
218 if (neg_adj)
219 incvalue -= rate;
220 else
221 incvalue += rate;
222
223 wr32(E1000_TIMINCA, INCPERIOD_82576 | (incvalue & INCVALUE_82576_MASK));
224
225 return 0;
226}
227
Matthew Vicka79f4f82012-08-10 05:40:44 +0000228static int igb_ptp_adjfreq_82580(struct ptp_clock_info *ptp, s32 ppb)
Richard Cochrand339b132012-03-16 10:55:32 +0000229{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000230 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
231 ptp_caps);
232 struct e1000_hw *hw = &igb->hw;
233 int neg_adj = 0;
Richard Cochrand339b132012-03-16 10:55:32 +0000234 u64 rate;
235 u32 inca;
Richard Cochrand339b132012-03-16 10:55:32 +0000236
237 if (ppb < 0) {
238 neg_adj = 1;
239 ppb = -ppb;
240 }
241 rate = ppb;
242 rate <<= 26;
243 rate = div_u64(rate, 1953125);
244
245 inca = rate & INCVALUE_MASK;
246 if (neg_adj)
247 inca |= ISGN;
248
249 wr32(E1000_TIMINCA, inca);
250
251 return 0;
252}
253
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000254static int igb_ptp_adjtime_82576(struct ptp_clock_info *ptp, s64 delta)
Richard Cochrand339b132012-03-16 10:55:32 +0000255{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000256 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
257 ptp_caps);
Richard Cochrand339b132012-03-16 10:55:32 +0000258 unsigned long flags;
Richard Cochrand339b132012-03-16 10:55:32 +0000259
260 spin_lock_irqsave(&igb->tmreg_lock, flags);
Richard Cochran5ee698e2014-12-21 19:47:02 +0100261 timecounter_adjtime(&igb->tc, delta);
Richard Cochrand339b132012-03-16 10:55:32 +0000262 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
263
264 return 0;
265}
266
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000267static int igb_ptp_adjtime_i210(struct ptp_clock_info *ptp, s64 delta)
268{
269 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
270 ptp_caps);
271 unsigned long flags;
272 struct timespec now, then = ns_to_timespec(delta);
273
274 spin_lock_irqsave(&igb->tmreg_lock, flags);
275
276 igb_ptp_read_i210(igb, &now);
277 now = timespec_add(now, then);
278 igb_ptp_write_i210(igb, (const struct timespec *)&now);
279
280 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
281
282 return 0;
283}
284
285static int igb_ptp_gettime_82576(struct ptp_clock_info *ptp,
286 struct timespec *ts)
Richard Cochrand339b132012-03-16 10:55:32 +0000287{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000288 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
289 ptp_caps);
290 unsigned long flags;
Richard Cochrand339b132012-03-16 10:55:32 +0000291 u64 ns;
292 u32 remainder;
Richard Cochrand339b132012-03-16 10:55:32 +0000293
294 spin_lock_irqsave(&igb->tmreg_lock, flags);
295
296 ns = timecounter_read(&igb->tc);
297
298 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
299
300 ts->tv_sec = div_u64_rem(ns, 1000000000, &remainder);
301 ts->tv_nsec = remainder;
302
303 return 0;
304}
305
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000306static int igb_ptp_gettime_i210(struct ptp_clock_info *ptp,
307 struct timespec *ts)
308{
309 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
310 ptp_caps);
311 unsigned long flags;
312
313 spin_lock_irqsave(&igb->tmreg_lock, flags);
314
315 igb_ptp_read_i210(igb, ts);
316
317 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
318
319 return 0;
320}
321
322static int igb_ptp_settime_82576(struct ptp_clock_info *ptp,
323 const struct timespec *ts)
Richard Cochrand339b132012-03-16 10:55:32 +0000324{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000325 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
326 ptp_caps);
Richard Cochrand339b132012-03-16 10:55:32 +0000327 unsigned long flags;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000328 u64 ns;
Richard Cochrand339b132012-03-16 10:55:32 +0000329
330 ns = ts->tv_sec * 1000000000ULL;
331 ns += ts->tv_nsec;
332
333 spin_lock_irqsave(&igb->tmreg_lock, flags);
334
335 timecounter_init(&igb->tc, &igb->cc, ns);
336
337 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
338
339 return 0;
340}
341
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000342static int igb_ptp_settime_i210(struct ptp_clock_info *ptp,
343 const struct timespec *ts)
344{
345 struct igb_adapter *igb = container_of(ptp, struct igb_adapter,
346 ptp_caps);
347 unsigned long flags;
348
349 spin_lock_irqsave(&igb->tmreg_lock, flags);
350
351 igb_ptp_write_i210(igb, ts);
352
353 spin_unlock_irqrestore(&igb->tmreg_lock, flags);
354
355 return 0;
356}
357
Jacob Keller102be522014-05-16 07:21:13 +0000358static int igb_ptp_feature_enable(struct ptp_clock_info *ptp,
359 struct ptp_clock_request *rq, int on)
Richard Cochrand339b132012-03-16 10:55:32 +0000360{
361 return -EOPNOTSUPP;
362}
363
Matthew Vick1f6e8172012-08-18 07:26:33 +0000364/**
365 * igb_ptp_tx_work
366 * @work: pointer to work struct
367 *
368 * This work function polls the TSYNCTXCTL valid bit to determine when a
369 * timestamp has been taken for the current stored skb.
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000370 **/
Jeff Kirsher167f3f72014-02-25 17:58:56 -0800371static void igb_ptp_tx_work(struct work_struct *work)
Matthew Vick1f6e8172012-08-18 07:26:33 +0000372{
373 struct igb_adapter *adapter = container_of(work, struct igb_adapter,
374 ptp_tx_work);
375 struct e1000_hw *hw = &adapter->hw;
376 u32 tsynctxctl;
377
378 if (!adapter->ptp_tx_skb)
379 return;
380
Matthew Vick428f1f72012-12-13 07:20:34 +0000381 if (time_is_before_jiffies(adapter->ptp_tx_start +
382 IGB_PTP_TX_TIMEOUT)) {
383 dev_kfree_skb_any(adapter->ptp_tx_skb);
384 adapter->ptp_tx_skb = NULL;
Jakub Kicinskied4420a2014-03-15 14:55:32 +0000385 clear_bit_unlock(__IGB_PTP_TX_IN_PROGRESS, &adapter->state);
Matthew Vick428f1f72012-12-13 07:20:34 +0000386 adapter->tx_hwtstamp_timeouts++;
Jakub Kicinskic5ffe7e2014-04-02 10:33:22 +0000387 dev_warn(&adapter->pdev->dev, "clearing Tx timestamp hang\n");
Matthew Vick428f1f72012-12-13 07:20:34 +0000388 return;
389 }
390
Matthew Vick1f6e8172012-08-18 07:26:33 +0000391 tsynctxctl = rd32(E1000_TSYNCTXCTL);
392 if (tsynctxctl & E1000_TSYNCTXCTL_VALID)
393 igb_ptp_tx_hwtstamp(adapter);
394 else
395 /* reschedule to check later */
396 schedule_work(&adapter->ptp_tx_work);
397}
398
Matthew Vicka79f4f82012-08-10 05:40:44 +0000399static void igb_ptp_overflow_check(struct work_struct *work)
Richard Cochrand339b132012-03-16 10:55:32 +0000400{
Richard Cochrand339b132012-03-16 10:55:32 +0000401 struct igb_adapter *igb =
Matthew Vicka79f4f82012-08-10 05:40:44 +0000402 container_of(work, struct igb_adapter, ptp_overflow_work.work);
403 struct timespec ts;
Richard Cochrand339b132012-03-16 10:55:32 +0000404
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000405 igb->ptp_caps.gettime(&igb->ptp_caps, &ts);
Richard Cochrand339b132012-03-16 10:55:32 +0000406
407 pr_debug("igb overflow check at %ld.%09lu\n", ts.tv_sec, ts.tv_nsec);
408
Matthew Vicka79f4f82012-08-10 05:40:44 +0000409 schedule_delayed_work(&igb->ptp_overflow_work,
410 IGB_SYSTIM_OVERFLOW_PERIOD);
411}
412
413/**
Matthew Vickfc580752012-12-13 07:20:35 +0000414 * igb_ptp_rx_hang - detect error case when Rx timestamp registers latched
415 * @adapter: private network adapter structure
416 *
417 * This watchdog task is scheduled to detect error case where hardware has
418 * dropped an Rx packet that was timestamped when the ring is full. The
419 * particular error is rare but leaves the device in a state unable to timestamp
420 * any future packets.
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000421 **/
Matthew Vickfc580752012-12-13 07:20:35 +0000422void igb_ptp_rx_hang(struct igb_adapter *adapter)
423{
424 struct e1000_hw *hw = &adapter->hw;
Matthew Vickfc580752012-12-13 07:20:35 +0000425 u32 tsyncrxctl = rd32(E1000_TSYNCRXCTL);
426 unsigned long rx_event;
Matthew Vickfc580752012-12-13 07:20:35 +0000427
428 if (hw->mac.type != e1000_82576)
429 return;
430
431 /* If we don't have a valid timestamp in the registers, just update the
432 * timeout counter and exit
433 */
434 if (!(tsyncrxctl & E1000_TSYNCRXCTL_VALID)) {
435 adapter->last_rx_ptp_check = jiffies;
436 return;
437 }
438
439 /* Determine the most recent watchdog or rx_timestamp event */
440 rx_event = adapter->last_rx_ptp_check;
Jakub Kicinski5499a962014-04-02 10:33:33 +0000441 if (time_after(adapter->last_rx_timestamp, rx_event))
442 rx_event = adapter->last_rx_timestamp;
Matthew Vickfc580752012-12-13 07:20:35 +0000443
444 /* Only need to read the high RXSTMP register to clear the lock */
445 if (time_is_before_jiffies(rx_event + 5 * HZ)) {
446 rd32(E1000_RXSTMPH);
447 adapter->last_rx_ptp_check = jiffies;
448 adapter->rx_hwtstamp_cleared++;
Jakub Kicinskic5ffe7e2014-04-02 10:33:22 +0000449 dev_warn(&adapter->pdev->dev, "clearing Rx timestamp hang\n");
Matthew Vickfc580752012-12-13 07:20:35 +0000450 }
451}
452
453/**
Matthew Vicka79f4f82012-08-10 05:40:44 +0000454 * igb_ptp_tx_hwtstamp - utility function which checks for TX time stamp
Matthew Vick1f6e8172012-08-18 07:26:33 +0000455 * @adapter: Board private structure.
Matthew Vicka79f4f82012-08-10 05:40:44 +0000456 *
457 * If we were asked to do hardware stamping and such a time stamp is
458 * available, then it must have been for this skb here because we only
459 * allow only one such packet into the queue.
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000460 **/
Jeff Kirsher167f3f72014-02-25 17:58:56 -0800461static void igb_ptp_tx_hwtstamp(struct igb_adapter *adapter)
Matthew Vicka79f4f82012-08-10 05:40:44 +0000462{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000463 struct e1000_hw *hw = &adapter->hw;
464 struct skb_shared_hwtstamps shhwtstamps;
465 u64 regval;
466
Matthew Vicka79f4f82012-08-10 05:40:44 +0000467 regval = rd32(E1000_TXSTMPL);
468 regval |= (u64)rd32(E1000_TXSTMPH) << 32;
469
470 igb_ptp_systim_to_hwtstamp(adapter, &shhwtstamps, regval);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000471 skb_tstamp_tx(adapter->ptp_tx_skb, &shhwtstamps);
472 dev_kfree_skb_any(adapter->ptp_tx_skb);
473 adapter->ptp_tx_skb = NULL;
Jakub Kicinskied4420a2014-03-15 14:55:32 +0000474 clear_bit_unlock(__IGB_PTP_TX_IN_PROGRESS, &adapter->state);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000475}
476
Alexander Duyckb5345502012-09-25 05:14:55 +0000477/**
478 * igb_ptp_rx_pktstamp - retrieve Rx per packet timestamp
479 * @q_vector: Pointer to interrupt specific structure
480 * @va: Pointer to address containing Rx buffer
481 * @skb: Buffer containing timestamp and packet
482 *
483 * This function is meant to retrieve a timestamp from the first buffer of an
484 * incoming frame. The value is stored in little endian format starting on
485 * byte 8.
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000486 **/
Alexander Duyckb5345502012-09-25 05:14:55 +0000487void igb_ptp_rx_pktstamp(struct igb_q_vector *q_vector,
488 unsigned char *va,
489 struct sk_buff *skb)
490{
Alexander Duyckac61d512012-10-23 00:01:04 +0000491 __le64 *regval = (__le64 *)va;
Alexander Duyckb5345502012-09-25 05:14:55 +0000492
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000493 /* The timestamp is recorded in little endian format.
Alexander Duyckb5345502012-09-25 05:14:55 +0000494 * DWORD: 0 1 2 3
495 * Field: Reserved Reserved SYSTIML SYSTIMH
496 */
497 igb_ptp_systim_to_hwtstamp(q_vector->adapter, skb_hwtstamps(skb),
498 le64_to_cpu(regval[1]));
499}
500
501/**
502 * igb_ptp_rx_rgtstamp - retrieve Rx timestamp stored in register
503 * @q_vector: Pointer to interrupt specific structure
504 * @skb: Buffer containing timestamp and packet
505 *
506 * This function is meant to retrieve a timestamp from the internal registers
507 * of the adapter and store it in the skb.
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000508 **/
Alexander Duyckb5345502012-09-25 05:14:55 +0000509void igb_ptp_rx_rgtstamp(struct igb_q_vector *q_vector,
Matthew Vicka79f4f82012-08-10 05:40:44 +0000510 struct sk_buff *skb)
511{
512 struct igb_adapter *adapter = q_vector->adapter;
513 struct e1000_hw *hw = &adapter->hw;
514 u64 regval;
515
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000516 /* If this bit is set, then the RX registers contain the time stamp. No
Matthew Vicka79f4f82012-08-10 05:40:44 +0000517 * other packet will be time stamped until we read these registers, so
518 * read the registers to make them available again. Because only one
519 * packet can be time stamped at a time, we know that the register
520 * values must belong to this one here and therefore we don't need to
521 * compare any of the additional attributes stored for it.
522 *
523 * If nothing went wrong, then it should have a shared tx_flags that we
524 * can turn into a skb_shared_hwtstamps.
525 */
Alexander Duyckb5345502012-09-25 05:14:55 +0000526 if (!(rd32(E1000_TSYNCRXCTL) & E1000_TSYNCRXCTL_VALID))
527 return;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000528
Alexander Duyckb5345502012-09-25 05:14:55 +0000529 regval = rd32(E1000_RXSTMPL);
530 regval |= (u64)rd32(E1000_RXSTMPH) << 32;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000531
532 igb_ptp_systim_to_hwtstamp(adapter, skb_hwtstamps(skb), regval);
Jakub Kicinski5499a962014-04-02 10:33:33 +0000533
534 /* Update the last_rx_timestamp timer in order to enable watchdog check
535 * for error case of latched timestamp on a dropped packet.
536 */
537 adapter->last_rx_timestamp = jiffies;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000538}
539
540/**
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000541 * igb_ptp_get_ts_config - get hardware time stamping config
Matthew Vicka79f4f82012-08-10 05:40:44 +0000542 * @netdev:
543 * @ifreq:
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000544 *
545 * Get the hwtstamp_config settings to return to the user. Rather than attempt
546 * to deconstruct the settings from the registers, just return a shadow copy
547 * of the last known settings.
548 **/
549int igb_ptp_get_ts_config(struct net_device *netdev, struct ifreq *ifr)
550{
551 struct igb_adapter *adapter = netdev_priv(netdev);
552 struct hwtstamp_config *config = &adapter->tstamp_config;
553
554 return copy_to_user(ifr->ifr_data, config, sizeof(*config)) ?
555 -EFAULT : 0;
556}
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000557
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000558/**
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000559 * igb_ptp_set_timestamp_mode - setup hardware for timestamping
560 * @adapter: networking device structure
561 * @config: hwtstamp configuration
Matthew Vicka79f4f82012-08-10 05:40:44 +0000562 *
563 * Outgoing time stamping can be enabled and disabled. Play nice and
564 * disable it when requested, although it shouldn't case any overhead
565 * when no packet needs it. At most one packet in the queue may be
566 * marked for time stamping, otherwise it would be impossible to tell
567 * for sure to which packet the hardware time stamp belongs.
568 *
569 * Incoming time stamping has to be configured via the hardware
570 * filters. Not all combinations are supported, in particular event
571 * type has to be specified. Matching the kind of event packet is
572 * not supported, with the exception of "all V2 events regardless of
573 * level 2 or 4".
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000574 */
575static int igb_ptp_set_timestamp_mode(struct igb_adapter *adapter,
576 struct hwtstamp_config *config)
Matthew Vicka79f4f82012-08-10 05:40:44 +0000577{
Matthew Vicka79f4f82012-08-10 05:40:44 +0000578 struct e1000_hw *hw = &adapter->hw;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000579 u32 tsync_tx_ctl = E1000_TSYNCTXCTL_ENABLED;
580 u32 tsync_rx_ctl = E1000_TSYNCRXCTL_ENABLED;
581 u32 tsync_rx_cfg = 0;
582 bool is_l4 = false;
583 bool is_l2 = false;
584 u32 regval;
585
Matthew Vicka79f4f82012-08-10 05:40:44 +0000586 /* reserved for future extensions */
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000587 if (config->flags)
Matthew Vicka79f4f82012-08-10 05:40:44 +0000588 return -EINVAL;
589
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000590 switch (config->tx_type) {
Matthew Vicka79f4f82012-08-10 05:40:44 +0000591 case HWTSTAMP_TX_OFF:
592 tsync_tx_ctl = 0;
593 case HWTSTAMP_TX_ON:
594 break;
595 default:
596 return -ERANGE;
597 }
598
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000599 switch (config->rx_filter) {
Matthew Vicka79f4f82012-08-10 05:40:44 +0000600 case HWTSTAMP_FILTER_NONE:
601 tsync_rx_ctl = 0;
602 break;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000603 case HWTSTAMP_FILTER_PTP_V1_L4_SYNC:
604 tsync_rx_ctl |= E1000_TSYNCRXCTL_TYPE_L4_V1;
605 tsync_rx_cfg = E1000_TSYNCRXCFG_PTP_V1_SYNC_MESSAGE;
606 is_l4 = true;
607 break;
608 case HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ:
609 tsync_rx_ctl |= E1000_TSYNCRXCTL_TYPE_L4_V1;
610 tsync_rx_cfg = E1000_TSYNCRXCFG_PTP_V1_DELAY_REQ_MESSAGE;
611 is_l4 = true;
612 break;
Matthew Vick3e961a02012-11-08 08:38:57 +0000613 case HWTSTAMP_FILTER_PTP_V2_EVENT:
614 case HWTSTAMP_FILTER_PTP_V2_L2_EVENT:
615 case HWTSTAMP_FILTER_PTP_V2_L4_EVENT:
616 case HWTSTAMP_FILTER_PTP_V2_SYNC:
Matthew Vicka79f4f82012-08-10 05:40:44 +0000617 case HWTSTAMP_FILTER_PTP_V2_L2_SYNC:
618 case HWTSTAMP_FILTER_PTP_V2_L4_SYNC:
Matthew Vick3e961a02012-11-08 08:38:57 +0000619 case HWTSTAMP_FILTER_PTP_V2_DELAY_REQ:
Matthew Vicka79f4f82012-08-10 05:40:44 +0000620 case HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ:
621 case HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ:
Matthew Vicka79f4f82012-08-10 05:40:44 +0000622 tsync_rx_ctl |= E1000_TSYNCRXCTL_TYPE_EVENT_V2;
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000623 config->rx_filter = HWTSTAMP_FILTER_PTP_V2_EVENT;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000624 is_l2 = true;
625 is_l4 = true;
626 break;
Matthew Vick3e961a02012-11-08 08:38:57 +0000627 case HWTSTAMP_FILTER_PTP_V1_L4_EVENT:
628 case HWTSTAMP_FILTER_ALL:
629 /* 82576 cannot timestamp all packets, which it needs to do to
630 * support both V1 Sync and Delay_Req messages
631 */
632 if (hw->mac.type != e1000_82576) {
633 tsync_rx_ctl |= E1000_TSYNCRXCTL_TYPE_ALL;
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000634 config->rx_filter = HWTSTAMP_FILTER_ALL;
Matthew Vick3e961a02012-11-08 08:38:57 +0000635 break;
636 }
637 /* fall through */
Matthew Vicka79f4f82012-08-10 05:40:44 +0000638 default:
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000639 config->rx_filter = HWTSTAMP_FILTER_NONE;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000640 return -ERANGE;
641 }
642
643 if (hw->mac.type == e1000_82575) {
644 if (tsync_rx_ctl | tsync_tx_ctl)
645 return -EINVAL;
646 return 0;
647 }
648
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000649 /* Per-packet timestamping only works if all packets are
Matthew Vicka79f4f82012-08-10 05:40:44 +0000650 * timestamped, so enable timestamping in all packets as
Jeff Kirsherb980ac12013-02-23 07:29:56 +0000651 * long as one Rx filter was configured.
Matthew Vicka79f4f82012-08-10 05:40:44 +0000652 */
653 if ((hw->mac.type >= e1000_82580) && tsync_rx_ctl) {
654 tsync_rx_ctl = E1000_TSYNCRXCTL_ENABLED;
655 tsync_rx_ctl |= E1000_TSYNCRXCTL_TYPE_ALL;
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000656 config->rx_filter = HWTSTAMP_FILTER_ALL;
Matthew Vick3e961a02012-11-08 08:38:57 +0000657 is_l2 = true;
658 is_l4 = true;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000659
660 if ((hw->mac.type == e1000_i210) ||
661 (hw->mac.type == e1000_i211)) {
662 regval = rd32(E1000_RXPBS);
663 regval |= E1000_RXPBS_CFG_TS_EN;
664 wr32(E1000_RXPBS, regval);
665 }
Matthew Vicka79f4f82012-08-10 05:40:44 +0000666 }
667
668 /* enable/disable TX */
669 regval = rd32(E1000_TSYNCTXCTL);
670 regval &= ~E1000_TSYNCTXCTL_ENABLED;
671 regval |= tsync_tx_ctl;
672 wr32(E1000_TSYNCTXCTL, regval);
673
674 /* enable/disable RX */
675 regval = rd32(E1000_TSYNCRXCTL);
676 regval &= ~(E1000_TSYNCRXCTL_ENABLED | E1000_TSYNCRXCTL_TYPE_MASK);
677 regval |= tsync_rx_ctl;
678 wr32(E1000_TSYNCRXCTL, regval);
679
680 /* define which PTP packets are time stamped */
681 wr32(E1000_TSYNCRXCFG, tsync_rx_cfg);
682
683 /* define ethertype filter for timestamped packets */
684 if (is_l2)
685 wr32(E1000_ETQF(3),
686 (E1000_ETQF_FILTER_ENABLE | /* enable filter */
687 E1000_ETQF_1588 | /* enable timestamping */
688 ETH_P_1588)); /* 1588 eth protocol type */
689 else
690 wr32(E1000_ETQF(3), 0);
691
Matthew Vicka79f4f82012-08-10 05:40:44 +0000692 /* L4 Queue Filter[3]: filter by destination port and protocol */
693 if (is_l4) {
694 u32 ftqf = (IPPROTO_UDP /* UDP */
695 | E1000_FTQF_VF_BP /* VF not compared */
696 | E1000_FTQF_1588_TIME_STAMP /* Enable Timestamping */
697 | E1000_FTQF_MASK); /* mask all inputs */
698 ftqf &= ~E1000_FTQF_MASK_PROTO_BP; /* enable protocol check */
699
Matthew Vickba598142012-12-13 07:20:36 +0000700 wr32(E1000_IMIR(3), htons(PTP_EV_PORT));
Matthew Vicka79f4f82012-08-10 05:40:44 +0000701 wr32(E1000_IMIREXT(3),
702 (E1000_IMIREXT_SIZE_BP | E1000_IMIREXT_CTRL_BP));
703 if (hw->mac.type == e1000_82576) {
704 /* enable source port check */
Matthew Vickba598142012-12-13 07:20:36 +0000705 wr32(E1000_SPQF(3), htons(PTP_EV_PORT));
Matthew Vicka79f4f82012-08-10 05:40:44 +0000706 ftqf &= ~E1000_FTQF_MASK_SOURCE_PORT_BP;
707 }
708 wr32(E1000_FTQF(3), ftqf);
709 } else {
710 wr32(E1000_FTQF(3), E1000_FTQF_MASK);
711 }
712 wrfl();
713
714 /* clear TX/RX time stamp registers, just to be sure */
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000715 regval = rd32(E1000_TXSTMPL);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000716 regval = rd32(E1000_TXSTMPH);
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000717 regval = rd32(E1000_RXSTMPL);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000718 regval = rd32(E1000_RXSTMPH);
719
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000720 return 0;
721}
722
723/**
724 * igb_ptp_set_ts_config - set hardware time stamping config
725 * @netdev:
726 * @ifreq:
727 *
728 **/
729int igb_ptp_set_ts_config(struct net_device *netdev, struct ifreq *ifr)
730{
731 struct igb_adapter *adapter = netdev_priv(netdev);
732 struct hwtstamp_config config;
733 int err;
734
735 if (copy_from_user(&config, ifr->ifr_data, sizeof(config)))
736 return -EFAULT;
737
738 err = igb_ptp_set_timestamp_mode(adapter, &config);
739 if (err)
740 return err;
741
742 /* save these settings for future reference */
743 memcpy(&adapter->tstamp_config, &config,
744 sizeof(adapter->tstamp_config));
745
746 return copy_to_user(ifr->ifr_data, &config, sizeof(config)) ?
Matthew Vicka79f4f82012-08-10 05:40:44 +0000747 -EFAULT : 0;
Richard Cochrand339b132012-03-16 10:55:32 +0000748}
749
750void igb_ptp_init(struct igb_adapter *adapter)
751{
752 struct e1000_hw *hw = &adapter->hw;
Matthew Vick201987e2012-08-10 05:40:46 +0000753 struct net_device *netdev = adapter->netdev;
Richard Cochrand339b132012-03-16 10:55:32 +0000754
755 switch (hw->mac.type) {
Richard Cochrand339b132012-03-16 10:55:32 +0000756 case e1000_82576:
Matthew Vick201987e2012-08-10 05:40:46 +0000757 snprintf(adapter->ptp_caps.name, 16, "%pm", netdev->dev_addr);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000758 adapter->ptp_caps.owner = THIS_MODULE;
Jiri Benc75517d92013-03-20 09:06:34 +0000759 adapter->ptp_caps.max_adj = 999999881;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000760 adapter->ptp_caps.n_ext_ts = 0;
761 adapter->ptp_caps.pps = 0;
762 adapter->ptp_caps.adjfreq = igb_ptp_adjfreq_82576;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000763 adapter->ptp_caps.adjtime = igb_ptp_adjtime_82576;
764 adapter->ptp_caps.gettime = igb_ptp_gettime_82576;
765 adapter->ptp_caps.settime = igb_ptp_settime_82576;
Jacob Keller102be522014-05-16 07:21:13 +0000766 adapter->ptp_caps.enable = igb_ptp_feature_enable;
Matthew Vicka79f4f82012-08-10 05:40:44 +0000767 adapter->cc.read = igb_ptp_read_82576;
Richard Cochranb57c8942015-01-02 20:22:06 +0100768 adapter->cc.mask = CYCLECOUNTER_MASK(64);
Matthew Vicka79f4f82012-08-10 05:40:44 +0000769 adapter->cc.mult = 1;
770 adapter->cc.shift = IGB_82576_TSYNC_SHIFT;
Richard Cochrand339b132012-03-16 10:55:32 +0000771 /* Dial the nominal frequency. */
772 wr32(E1000_TIMINCA, INCPERIOD_82576 | INCVALUE_82576);
773 break;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000774 case e1000_82580:
Carolyn Wybornyceb5f132013-04-18 22:21:30 +0000775 case e1000_i354:
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000776 case e1000_i350:
777 snprintf(adapter->ptp_caps.name, 16, "%pm", netdev->dev_addr);
778 adapter->ptp_caps.owner = THIS_MODULE;
779 adapter->ptp_caps.max_adj = 62499999;
780 adapter->ptp_caps.n_ext_ts = 0;
781 adapter->ptp_caps.pps = 0;
782 adapter->ptp_caps.adjfreq = igb_ptp_adjfreq_82580;
783 adapter->ptp_caps.adjtime = igb_ptp_adjtime_82576;
784 adapter->ptp_caps.gettime = igb_ptp_gettime_82576;
785 adapter->ptp_caps.settime = igb_ptp_settime_82576;
Jacob Keller102be522014-05-16 07:21:13 +0000786 adapter->ptp_caps.enable = igb_ptp_feature_enable;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000787 adapter->cc.read = igb_ptp_read_82580;
Richard Cochranb57c8942015-01-02 20:22:06 +0100788 adapter->cc.mask = CYCLECOUNTER_MASK(IGB_NBITS_82580);
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000789 adapter->cc.mult = 1;
790 adapter->cc.shift = 0;
791 /* Enable the timer functions by clearing bit 31. */
792 wr32(E1000_TSAUXC, 0x0);
793 break;
794 case e1000_i210:
795 case e1000_i211:
796 snprintf(adapter->ptp_caps.name, 16, "%pm", netdev->dev_addr);
797 adapter->ptp_caps.owner = THIS_MODULE;
798 adapter->ptp_caps.max_adj = 62499999;
799 adapter->ptp_caps.n_ext_ts = 0;
800 adapter->ptp_caps.pps = 0;
801 adapter->ptp_caps.adjfreq = igb_ptp_adjfreq_82580;
802 adapter->ptp_caps.adjtime = igb_ptp_adjtime_i210;
803 adapter->ptp_caps.gettime = igb_ptp_gettime_i210;
804 adapter->ptp_caps.settime = igb_ptp_settime_i210;
Jacob Keller102be522014-05-16 07:21:13 +0000805 adapter->ptp_caps.enable = igb_ptp_feature_enable;
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000806 /* Enable the timer functions by clearing bit 31. */
807 wr32(E1000_TSAUXC, 0x0);
808 break;
Richard Cochrand339b132012-03-16 10:55:32 +0000809 default:
810 adapter->ptp_clock = NULL;
811 return;
812 }
813
814 wrfl();
815
Richard Cochrand339b132012-03-16 10:55:32 +0000816 spin_lock_init(&adapter->tmreg_lock);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000817 INIT_WORK(&adapter->ptp_tx_work, igb_ptp_tx_work);
818
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000819 /* Initialize the clock and overflow work for devices that need it. */
820 if ((hw->mac.type == e1000_i210) || (hw->mac.type == e1000_i211)) {
821 struct timespec ts = ktime_to_timespec(ktime_get_real());
822
823 igb_ptp_settime_i210(&adapter->ptp_caps, &ts);
824 } else {
825 timecounter_init(&adapter->tc, &adapter->cc,
826 ktime_to_ns(ktime_get_real()));
827
828 INIT_DELAYED_WORK(&adapter->ptp_overflow_work,
829 igb_ptp_overflow_check);
830
831 schedule_delayed_work(&adapter->ptp_overflow_work,
832 IGB_SYSTIM_OVERFLOW_PERIOD);
833 }
Richard Cochrand339b132012-03-16 10:55:32 +0000834
Matthew Vick1f6e8172012-08-18 07:26:33 +0000835 /* Initialize the time sync interrupts for devices that support it. */
836 if (hw->mac.type >= e1000_82580) {
Carolyn Wyborny0c375ac2014-03-11 06:15:37 +0000837 wr32(E1000_TSIM, TSYNC_INTERRUPTS);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000838 wr32(E1000_IMS, E1000_IMS_TS);
839 }
840
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000841 adapter->tstamp_config.rx_filter = HWTSTAMP_FILTER_NONE;
842 adapter->tstamp_config.tx_type = HWTSTAMP_TX_OFF;
843
Richard Cochran1ef76152012-09-22 07:02:03 +0000844 adapter->ptp_clock = ptp_clock_register(&adapter->ptp_caps,
845 &adapter->pdev->dev);
Richard Cochrand339b132012-03-16 10:55:32 +0000846 if (IS_ERR(adapter->ptp_clock)) {
847 adapter->ptp_clock = NULL;
848 dev_err(&adapter->pdev->dev, "ptp_clock_register failed\n");
Matthew Vick1f6e8172012-08-18 07:26:33 +0000849 } else {
Richard Cochrand339b132012-03-16 10:55:32 +0000850 dev_info(&adapter->pdev->dev, "added PHC on %s\n",
851 adapter->netdev->name);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000852 adapter->flags |= IGB_FLAG_PTP;
853 }
Richard Cochrand339b132012-03-16 10:55:32 +0000854}
855
Matthew Vicka79f4f82012-08-10 05:40:44 +0000856/**
857 * igb_ptp_stop - Disable PTP device and stop the overflow check.
858 * @adapter: Board private structure.
859 *
860 * This function stops the PTP support and cancels the delayed work.
861 **/
862void igb_ptp_stop(struct igb_adapter *adapter)
Richard Cochrand339b132012-03-16 10:55:32 +0000863{
Carolyn Wybornyd3eef8c2012-05-16 01:46:00 +0000864 switch (adapter->hw.mac.type) {
Carolyn Wybornyd3eef8c2012-05-16 01:46:00 +0000865 case e1000_82576:
Matthew Vick1f6e8172012-08-18 07:26:33 +0000866 case e1000_82580:
Carolyn Wybornyceb5f132013-04-18 22:21:30 +0000867 case e1000_i354:
Matthew Vick1f6e8172012-08-18 07:26:33 +0000868 case e1000_i350:
Matthew Vicka79f4f82012-08-10 05:40:44 +0000869 cancel_delayed_work_sync(&adapter->ptp_overflow_work);
Carolyn Wybornyd3eef8c2012-05-16 01:46:00 +0000870 break;
Matthew Vick1f6e8172012-08-18 07:26:33 +0000871 case e1000_i210:
872 case e1000_i211:
873 /* No delayed work to cancel. */
874 break;
Carolyn Wybornyd3eef8c2012-05-16 01:46:00 +0000875 default:
876 return;
877 }
Richard Cochrand339b132012-03-16 10:55:32 +0000878
Matthew Vick1f6e8172012-08-18 07:26:33 +0000879 cancel_work_sync(&adapter->ptp_tx_work);
Matthew Vickbadc26d2012-12-13 07:20:37 +0000880 if (adapter->ptp_tx_skb) {
881 dev_kfree_skb_any(adapter->ptp_tx_skb);
882 adapter->ptp_tx_skb = NULL;
Jakub Kicinskied4420a2014-03-15 14:55:32 +0000883 clear_bit_unlock(__IGB_PTP_TX_IN_PROGRESS, &adapter->state);
Matthew Vickbadc26d2012-12-13 07:20:37 +0000884 }
Matthew Vick1f6e8172012-08-18 07:26:33 +0000885
Richard Cochrand339b132012-03-16 10:55:32 +0000886 if (adapter->ptp_clock) {
887 ptp_clock_unregister(adapter->ptp_clock);
888 dev_info(&adapter->pdev->dev, "removed PHC on %s\n",
889 adapter->netdev->name);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000890 adapter->flags &= ~IGB_FLAG_PTP;
Richard Cochrand339b132012-03-16 10:55:32 +0000891 }
892}
Matthew Vick1f6e8172012-08-18 07:26:33 +0000893
894/**
895 * igb_ptp_reset - Re-enable the adapter for PTP following a reset.
896 * @adapter: Board private structure.
897 *
898 * This function handles the reset work required to re-enable the PTP device.
899 **/
900void igb_ptp_reset(struct igb_adapter *adapter)
901{
902 struct e1000_hw *hw = &adapter->hw;
903
904 if (!(adapter->flags & IGB_FLAG_PTP))
905 return;
906
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000907 /* reset the tstamp_config */
Jacob Keller9f62ecf2014-06-05 07:25:10 +0000908 igb_ptp_set_timestamp_mode(adapter, &adapter->tstamp_config);
Jacob Keller6ab5f7b2014-01-11 07:20:06 +0000909
Matthew Vick1f6e8172012-08-18 07:26:33 +0000910 switch (adapter->hw.mac.type) {
911 case e1000_82576:
912 /* Dial the nominal frequency. */
913 wr32(E1000_TIMINCA, INCPERIOD_82576 | INCVALUE_82576);
914 break;
915 case e1000_82580:
Carolyn Wybornyceb5f132013-04-18 22:21:30 +0000916 case e1000_i354:
Matthew Vick1f6e8172012-08-18 07:26:33 +0000917 case e1000_i350:
918 case e1000_i210:
919 case e1000_i211:
920 /* Enable the timer functions and interrupts. */
921 wr32(E1000_TSAUXC, 0x0);
Carolyn Wyborny0c375ac2014-03-11 06:15:37 +0000922 wr32(E1000_TSIM, TSYNC_INTERRUPTS);
Matthew Vick1f6e8172012-08-18 07:26:33 +0000923 wr32(E1000_IMS, E1000_IMS_TS);
924 break;
925 default:
926 /* No work to do. */
927 return;
928 }
929
Matthew Vicke57b8bd2012-08-17 01:30:37 +0000930 /* Re-initialize the timer. */
931 if ((hw->mac.type == e1000_i210) || (hw->mac.type == e1000_i211)) {
932 struct timespec ts = ktime_to_timespec(ktime_get_real());
933
934 igb_ptp_settime_i210(&adapter->ptp_caps, &ts);
935 } else {
936 timecounter_init(&adapter->tc, &adapter->cc,
937 ktime_to_ns(ktime_get_real()));
938 }
Matthew Vick1f6e8172012-08-18 07:26:33 +0000939}